Mechanical geometric isomerism, which arises when bilaterally dissymmetric components are interlocked such that their internal mirror planes can be made congruent, is under-explored using simple prochiral components. Here we demonstrate that a single intercomponent H-bond appears sufficient to control the formation of rotaxanes and catenanes containing canonical mechanical geometric stereochemistry and identify a new mechanical stereogenic unit of rotaxanes, which yielded to a shuttling auxiliary synthesis
Rotaxanes are interlocked molecules in which a molecular ring is trapped on a dumbbell-shaped axle b...
Mechanically interlocked molecules are very interesting compounds for their architecture. The core o...
Once merely a synthetic curiosity, mechanically interlocked molecules (MIMs) have become readily ac...
Mechanically interlocked molecules, such as rotaxanes and catenanes, are composed of two or more cov...
Although chiral mechanically interlocked molecules (MIMs) have been synthesised and studied, enantio...
Chirality typically arises in molecules because of a rigidly chiral arrangement of covalently bonded...
Rotaxanes can display molecular chirality solely due to the mechanical bond between the axle and enc...
We report on a set of rotaxanes with symmetrical axles equipped with a central amide group that ins...
Chiral interlocked molecules in which the mechanical bond provides the sole stereogenic unit are typ...
Active-template auxiliary methodologies have previously been developed for the stereoselective synth...
Mechanically interlocked molecules have been of interest to chemists since the 1960s. Recent synthet...
Chiral interlocked molecules in which the mechanical bond provides the sole stereogenic unit are typ...
Active-template auxiliary methodologies have previously been developed for the stereoselective synth...
Reports of mechanically interlocked molecules (MIMs) have grown in recent years, aided by the relati...
ABSTRACT: We describe the first method for produc-tion of mechanically planar chiral rotaxanes in ex...
Rotaxanes are interlocked molecules in which a molecular ring is trapped on a dumbbell-shaped axle b...
Mechanically interlocked molecules are very interesting compounds for their architecture. The core o...
Once merely a synthetic curiosity, mechanically interlocked molecules (MIMs) have become readily ac...
Mechanically interlocked molecules, such as rotaxanes and catenanes, are composed of two or more cov...
Although chiral mechanically interlocked molecules (MIMs) have been synthesised and studied, enantio...
Chirality typically arises in molecules because of a rigidly chiral arrangement of covalently bonded...
Rotaxanes can display molecular chirality solely due to the mechanical bond between the axle and enc...
We report on a set of rotaxanes with symmetrical axles equipped with a central amide group that ins...
Chiral interlocked molecules in which the mechanical bond provides the sole stereogenic unit are typ...
Active-template auxiliary methodologies have previously been developed for the stereoselective synth...
Mechanically interlocked molecules have been of interest to chemists since the 1960s. Recent synthet...
Chiral interlocked molecules in which the mechanical bond provides the sole stereogenic unit are typ...
Active-template auxiliary methodologies have previously been developed for the stereoselective synth...
Reports of mechanically interlocked molecules (MIMs) have grown in recent years, aided by the relati...
ABSTRACT: We describe the first method for produc-tion of mechanically planar chiral rotaxanes in ex...
Rotaxanes are interlocked molecules in which a molecular ring is trapped on a dumbbell-shaped axle b...
Mechanically interlocked molecules are very interesting compounds for their architecture. The core o...
Once merely a synthetic curiosity, mechanically interlocked molecules (MIMs) have become readily ac...